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Stability of silicon based homojunction and heterojunction solar cells under space conditions

机译:硅基同质结和异质结太阳能电池在空间条件下的稳定性

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摘要

Two different types of n-a-Si:H/p-c-Si heterostructure solar cells with intrinsic buffer layer, one type with and one type without back surface field (BSF), and one purely crystalline silicon solar cell have been irradiated with protons at 1.7 MeV. For both types of heterojunctions and for the c-Si homojunction cells a similar dose been found for which degradation starts and also a similar decrease of the effective minority carrier diffusion length with increasing irradiation dose. For one type of heterojunction cells we observed a small increase of the collection efficiency in the blue part of the spectrum after irradiation what can be explained only by modifications of the interface between the crystalline silicon and the amorphous silicon or of the thin intrinsic a-Si:H layer. As a new tool for the evaluation of the solar cell degradation due to proton irradiation, electroluminescence measurements under forward bias have been used. The emission spectra confirms that for doses up to 5 x 1O~(12) protons/cm~2, silicon band-to-band recombination is the most important contribution to the light emission and the emission efficiency decreases monotonically with increasing proton dose.
机译:具有1.7 MeV质子的两种不同类型的具有本征缓冲层的na-Si:H / pc-Si异质结构太阳能电池,一种具有背面电场(BSF)的类型和一种具有纯结晶硅太阳能电池的质子辐照。对于两种类型的异质结和c-Si同质结电池,发现相似的剂量开始降解,并且随着辐射剂量的增加,有效少数载流子扩散长度的减小。对于一种类型的异质结电池,我们观察到辐照后光谱蓝色部分的收集效率略有提高,这只能通过修改晶体硅与非晶硅之间的界面或薄的本征a-Si来解释。 :H层。作为评估由于质子辐照引起的太阳能电池退化的新工具,已经使用了正向偏压下的电致发光测量。发射光谱证实,对于高达5 x 1O〜(12)质子/ cm〜2的剂量,硅带间复合是光发射的最重要贡献,并且发射效率随着质子剂量的增加而单调降低。

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